泰艺推出超低功耗OCXO系列助力挑战环境下的精密测量
泰艺推出超低功耗OCXO系列助力挑战环境下的精密测量
泰艺推出超低功耗晶振OCXO系列,助力挑战环境中的精准应用NF-16M384-7000和NF-10M-7000:超低功耗和卓越稳定性,适用于航空,海事,海底节点,卫星通信和精密监测应用.随着无线通信,物联网和精密定位的发展,对低功耗,高稳定性解决方案的需求持续增长.传统的OCXO虽然提供稳定性,但功耗过高.泰天的超低功耗OCXO振荡器系列结合了低功耗,快速启动和卓越稳定性,确保在挑战环境中的可靠性能.NF-16M384-7000:@25℃时小于75mWNF-10M-7000:@25℃时小于150mW卓越稳定性和精度±10ppb老化:每天0.2–0.5ppb快速启动和低相位噪声快速启动:60秒低相位噪声:-165dBc/10KHz设计用于关键应用泰天的超低功耗OCXO系列确保在航空,海事和SATCOM系统中,以低功耗和高稳定性实现精确计时.它确保与低噪声和抗振动能力可靠的通信.海底节点受益于低功耗和老化率,以支持长期部署.对于医疗和测试设备,快速启动支持实时操作.泰天的超低功耗OCXO系列,NF-16M384-7000和NF-10M-7000,为工程师提供了能源高效的解决方案,确保在关键应用中的可靠性能.立即行动!探索泰天超低功耗OCXO系列,访问我们的网站或联系泰天的销售团队,为您的设计提供更高效率,更可靠的未来动力.
传统OCXO为了维持恒温槽的稳定温度,通常需要持续消耗较高功率,这在电池供电的便携式精密测量设备(如野外地质勘探仪,手持频谱分析仪)中成为明显短板,频繁的充电或换电不仅影响工作效率,更可能因断电导致关键数据丢失.
台湾泰艺晶振超低功耗OCXO系列通过三项核心技术实现了功耗的革命性降低:一是采用新型恒温槽材料与结构设计,减少热容量的同时提升保温性能,使恒温槽达到稳定工作温度所需的加热功率降低40%以上;二是搭载智能温控算法,根据环境温度动态调节加热电流,在低温环境下自动提升功率以维持恒温,在高温环境下则减少甚至关闭加热,实现能效的自适应优化;三是优化内部电路的电源管理,采用低功耗芯片组与微电流驱动技术,将待机功耗控制在10mW以内.
实际测试数据显示,该系列OCXO在典型工作状态下的功耗仅为传统产品的1/3(约50-80mW),配合1000mAh锂电池即可支持便携式测量设备连续工作超过24小时,彻底解决了精密测量设备在无外接电源场景下的续航痛点.在工业在线精密测量领域,钢铁,化工等行业的生产车间往往存在高温,多尘,强振动的复杂环境,该系列OCXO为在线激光测厚仪,红外测温仪提供稳定频率基准,确保在轧钢生产线的高温辐射(环境温度达60℃)与机械振动中,仍能实现±0.1μm的厚度测量精度,助力工业产品质量的实时监控.
泰艺推出超低功耗OCXO系列助力挑战环境下的精密测量
OCETGCJTNF-48.000000 | Taitien | OC | XO (Standard) | 48 MHz | CMOS | 3.3V | ±50ppm |
OXETDCJANF-0.032768 | Taitien | OX | XO (Standard) | 32.768 kHz | CMOS | 3.3V | ±25ppm |
OCETDLJANF-25.000000 | Taitien | OC | XO (Standard) | 25 MHz | CMOS | 3.3V | ±25ppm |
TZKTADSANF-26.000000 | Taitien | TZ | TCXO | 26 MHz | Clipped Sine Wave | 1.8V | ±500ppb |
TXEABLSANF-24.000000 | Taitien | TX | VCTCXO | 24 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXEABLSANF-26.000000 | Taitien | TX | VCTCXO | 26 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXKTPCSANF-32.000000 | Taitien | TX | TCXO | 32 MHz | Clipped Sine Wave | 1.8V | ±1.5ppm |
TXEAADSANF-20.000000 | Taitien | TX | VCTCXO | 20 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TXETALSANF-10.000000 | Taitien | TX | TCXO | 10 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TYETBCSANF-32.000000 | Taitien | TY | TCXO | 32 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TYETBLSANF-40.000000 | Taitien | TY | TCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TYEAPLSANF-40.000000 | Taitien | TY | VCTCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1.5ppm |
TYETACSANF-26.000000 | Taitien | TY | TCXO | 26 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TYEAACSANF-38.400000 | Taitien | TY | VCTCXO | 38.4 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
VLCUWCWTNF-100.000000 | Taitien | VLCU | VCXO | 100 MHz | Sine Wave | 5V | ±35ppm |
TSEAALJANF-10.000000 | Taitien | TS | VCTCXO | 10 MHz | CMOS | 3.3V | ±500ppb |
TWETALJANF-40.000000 | Taitien | TW | TCXO | 40 MHz | CMOS | 3.3V | ±500ppb |
TWEAKLJANF-20.000000 | Taitien | TW | VCTCXO | 20 MHz | CMOS | 3.3V | ±280ppb |
TTETKLJANF-10.000000 | Taitien | TT | TCXO | 10 MHz | CMOS | 3.3V | ±280ppb |
TTEAKLJANF-10.000000 | Taitien | TT | VCTCXO | 10 MHz | CMOS | 3.3V | ±280ppb |
TTETKLSANF-10.000000 | Taitien | TT | TCXO | 10 MHz | Clipped Sine Wave | 3.3V | ±280ppb |
TSEATLJANF-10.000000 | Taitien | TS | VCTCXO | 10 MHz | CMOS | 3.3V | ±4.6ppm |
TWETMCJANF-10.000000 | Taitien | TW | TCXO | 10 MHz | CMOS | 3.3V | ±100ppb |
TTEAALJANF-50.000000 | Taitien | TT | VCTCXO | 50 MHz | CMOS | 3.3V | ±500ppb |
NNENCLJNNF-10.000000 | Taitien | NN | OCXO | 10 MHz | CMOS | 3.3V | ±20ppb |
NI-10M-2400 | Taitien | NI-10M-2400 | OCXO | 10 MHz | LVTTL | 5V | ±3ppb |
NI-10M-2403 | Taitien | NI-10M-2400 | OCXO | 10 MHz | LVTTL | 5V | ±3ppb |
NI-10M-2503 | Taitien | NI-10M-2500 | OCXO | 10 MHz | Sine Wave | 5V | ±3ppb |
NI-100M-2900 | Taitien | NI-100M-2900 | OCXO | 100 MHz | Sine Wave | 12V | ±50ppb |
NA-100M-6822 | Taitien | NA-100M-6800 | OCXO | 100 MHz | Sine Wave | 12V | ±100ppb |
OCKTGLJANF-0.032768 | Taitien | OC | XO (Standard) | 32.768 kHz | CMOS | 3.3V | ±50ppm |
OCETGLJTNF-100.000000 | Taitien | OC | XO (Standard) | 100 MHz | CMOS | 3.3V | ±50ppm |
TXETCLSANF-40.000000 | Taitien | TX | TCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2ppm |
TXETDDSANF-16.000000 | Taitien | TX | TCXO | 16 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2.5ppm |
TXETDCSANF-20.000000 | Taitien | TX | TCXO | 20 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2.5ppm |
TXETBLSANF-40.000000 | Taitien | TX | TCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXEABDSANF-32.000000 | Taitien | TX | VCTCXO | 32 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXETDDSANF-30.000000 | Taitien | TX | TCXO | 30 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2.5ppm |
TXETBLSANF-26.000000 | Taitien | TX | TCXO | 26 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXEAPDSANF-19.200000 | Taitien | TX | VCTCXO | 19.2 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1.5ppm |
TXEAPLSANF-40.000000 | Taitien | TX | VCTCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1.5ppm |
TXEACDSANF-26.000000 | Taitien | TX | VCTCXO | 26 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2ppm |
TXEACDSANF-20.000000 | Taitien | TX | VCTCXO | 20 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2ppm |
TXETBLSANF-27.000000 | Taitien | TX | TCXO | 27 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXETBLSANF-19.200000 | Taitien | TX | TCXO | 19.2 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TXETALSANF-26.000000 | Taitien | TX | TCXO | 26 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TXEAACSANF-40.000000 | Taitien | TX | VCTCXO | 40 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TXEAADSANF-25.000000 | Taitien | TX | VCTCXO | 25 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TYETBLSANF-38.400000 | Taitien | TY | TCXO | 38.4 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TYETBCSANF-50.000000 | Taitien | TY | TCXO | 50 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±1ppm |
TYETACSANF-32.000000 | Taitien | TY | TCXO | 32 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
TYETACSANF-20.000000 | Taitien | TY | TCXO | 20 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±500ppb |
PYEUCJJANF-100.000000 | Taitien | FASTXO | XO (Standard) | 100 MHz | CMOS | 2.8V ~ 3.3V | ±20ppm |
TWEAALSANF-10.000000 | Taitien | TW | VCTCXO | 10 MHz | Clipped Sine Wave | 3.3V | ±500ppb |
TTETKLJANF-30.720000 | Taitien | TT | TCXO | 30.72 MHz | CMOS | 3.3V | ±280ppb |
TTEAMCSANF-10.000000 | Taitien | TT | VCTCXO | 10 MHz | Clipped Sine Wave | 3.3V | ±100ppb |
OYKTGLJANF-0.032768 | Taitien | OY | XO (Standard) | 32.768 kHz | CMOS | 1.8V | ±50ppm |
OYETDLJANF-25.000000 | Taitien | OY | XO (Standard) | 25 MHz | CMOS | 3.3V | ±25ppm |
TXETDDSANF-19.200000 | Taitien | TX | TCXO | 19.2 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2.5ppm |
TXETCLSANF-25.000000 | Taitien | TX | TCXO | 25 MHz | Clipped Sine Wave | 2.8V ~ 3.3V | ±2ppm |
“推荐阅读”
- LiDAR(激光雷达): 引领未来自动驾驶的关键
- 使用TAITIEN的NA/NI-100M-6700解锁新的可能性
- Cardinal卡迪纳尔CX532Z-A5B3C5-70-12.0D18晶振常见问题
- Macrobizes主流晶体振荡器SP01-5TK50-A14B-12.288MHz供应
- Golledge下一代GSRFTA0942A频率控制5G网络的解决方案
- The role of CORE crystal oscillator in tram charger
- CORE关于晶振不起振的原因及案例讲解
- About the leading peer CORE quartz crystals
- 遥遥领先的Harmony Electronics在石英晶体元件的多方面应用
- 遥遥领先的Harmony Electronics Corp.用水晶增强安全驾驶